Department of Crop Science, Laboratory of General and Agricultural Microbiology, Agricultural University of Athens, Athens, Greece.
Department of Food Science and Human Nutrition, Laboratory of Chemistry, Agricultural University of Athens, Athens, Greece.
J Sci Food Agric. 2018 Nov;98(14):5418-5427. doi: 10.1002/jsfa.9085. Epub 2018 Jun 11.
Concentrations of 16 rare earth elements (REEs) and two actinides were determined for the first time both in cultivated mushrooms and in their production substrates by inductively coupled plasma mass spectroscopy. Moreover, the effect of REEs on cultivation parameters and composition of the final product was assessed, together with their potential use for authentication purposes.
The concentrations of REEs varied greatly among seven cultivation substrates and correlated with measurements in Cyclocybe cylindracea mushrooms; no such correlation was established in Pleurotus ostreatus. Reduction of hemicellulose, cellulose, and lignin in substrates during P. ostreatus cultivation was positively correlated with REE concentrations, which also affected the production performance depending on the species examined. In all cases, a negative correlation was established between bioconcentration factors (BCF) in mushrooms and REE content in substrates, while the effect of substrate composition on BCF values varied according to the element studied. The estimated daily intake values of REEs through mushroom consumption was at much lower levels than those reported as potentially harmful for human health.
The content of REEs in cultivation substrates and in mushrooms revealed that the bioaccumulation of elements differed in each fungus. The nature/origin of substrates seemed to affect the concentration of REEs in mushrooms to a considerable extent. © 2018 Society of Chemical Industry.
首次通过电感耦合等离子体质谱法同时测定了栽培蘑菇及其生产基质中 16 种稀土元素(REEs)和两种锕系元素的浓度。此外,评估了 REEs 对培养参数和最终产物组成的影响,以及它们在鉴别的潜在用途。
在七种栽培基质中,REEs 的浓度差异很大,与 Cylicocybe cylindracea 蘑菇的测量结果相关;在 Pleurotus ostreatus 中未建立这种相关性。在 P. ostreatus 培养过程中基质中半纤维素、纤维素和木质素的减少与 REE 浓度呈正相关,REE 浓度还会影响生产性能,具体取决于所研究的物种。在所有情况下,蘑菇中的生物浓缩因子(BCF)与基质中 REE 含量之间都建立了负相关关系,而基质组成对 BCF 值的影响则根据所研究的元素而有所不同。通过食用蘑菇摄入 REEs 的估计日摄入量远低于那些被报道为对人类健康可能有害的水平。
栽培基质和蘑菇中 REEs 的含量表明,每种真菌对元素的生物积累能力不同。基质的性质/来源似乎在很大程度上影响了蘑菇中 REEs 的浓度。© 2018 化学工业协会。